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Energy-efficient robot applications towards sustainable manufacturing

机译:节能机器人应用对可持续制造业

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摘要

The cloud technology provides sustainable solutions to the modern industrial robotic cells. Within the context, the objective of this research is to minimise the energy consumption of robots during assembly in a cloud environment. Given a robot path and based on the inverse kinematics and dynamics of the robot from the cloud, a set of feasible configurations of the robot can be derived, followed by calculating the desirable forces and torques on the joints and links of the robot. Energy consumption is then calculated for each feasible configuration along the path. The ones with the lowest energy consumption are chosen. Since the energy-efficient robot configurations lead to reduced overall energy consumption, this approach becomes instrumental and can be applied to energy-efficient robotic assembly. This cloud-based energy-efficient approach for robotic applications can largely enhance the current practice as demonstrated by the results of three case studies, leading towards sustainable manufacturing.
机译:云技术为现代工业机器人细胞提供可持续解决方案。在下文中,本研究的目的是在云环境中组装期间最小化机器人的能量消耗。给定机器人路径并基于来自云的机器人的逆运动学和动力学,可以导出机器人的一组可行的配置,然后计算在接头上的期望力和扭矩和机器人的链接。然后针对路径的每个可行配置计算能量消耗。选择了能耗最低的那些。由于节能机器人配置导致整体能耗降低,因此该方法变得有用,并且可以应用于节能机器人组件。这种基于云的能力有效的机器人应用方法可以大大提高目前的实践,如三种案例研究的结果所示,导致可持续制造。

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